By Andres Diaz Lantada
This publication covers biodevices, mostly implantable or quirurgical, for the analysis or therapy of other pathologies, which enjoy the use of energetic fabrics as sensors or actuators. Such lively or ''intelligent'' fabrics are in a position to responding in a managed strategy to varied exterior actual or chemical stimuli by means of altering a few of their houses. those fabrics can be utilized to layout and develop sensors, actuators, and multifunctional platforms with a lot of purposes for constructing biodevices and clinical home equipment. present paintings on those fields includes pr. Read more...
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Extra info for Handbook of Active Materials for Medical Devices : Advances and Applications
Lorenzo Yustos, H. et al. “Rapid tooling: Moldes rápidos a partir de estereolitografía”. Revista de plásticos modernos, 524, 150– 157, 2000. Matousek, R. “Konstruktionslehren des allgemeinen Maschinenbaus”. Springer. Berlin, 1957. ; et al. “Proyecto de Máquinas: Apuntes de Clase”. I. Industriales – Universidad Politécnica de Madrid. Madrid, 2005. ; et al. “Metodo cuantitativo para la evaluación de la seguridad en máquinas en la fase de diseño”. Actas del 8° Congreso Iberoamericano de Ingeniería Mecánica.
However, their performance in the face of flexion and fatigue are insufficient because the forces appearing cause the cracks to appear and propagate, which leads to a fragile rupture of these materials. Among the properties to be considered when choosing polymeric materials that are to be subject to forces as part of implants or prostheses is that they should have a remarkable tensile strength, flow tension and fatigue resistance. Moreover, with polymers the influence of working temperature on these properties must be taken into account when consulting supplier information or carrying out tests to determine such information.
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